Influence of Pumping on the Resistivity Evolution of High-Strength Concrete and Its Relation to the Rheology (2021-07)¶
10.1016/j.conbuildmat.2021.124095
Shen Wenkai, , Shi Caijun, Ji Youhong, Zeng Rong, Li Wei, Chen Zheng
Journal Article - Construction and Building Materials, Vol. 302
Abstract
The pumping process exerts high pressure and strong shearing on fresh concrete, which may affect the hydration process and rheological behavior of concrete. In this paper, full-scale pumping circuits with lengths of 348-, 600-, and 924-m were established to evaluate the effect of pumping on hydration and rheology of concrete. Electrical resistivity measurement was employed to indirectly evaluate the hydration process of concrete. Ten highstrength concrete (HSC) mixtures with slump flow of 680 ± 50 mm and strength grades of C60-C100 were pumped, and HSC mixtures were sampled before and after pumping for rheological properties and electrical resistivity measurements. Findings indicated that the hydration process, determined by the electrical resistivity evolution, was accelerated after pumping. The end of the dormant period of fresh concrete was decreased by 10.3%-27.3%, and the end of the setting period was shortened by 15.6%-28.4% after pumping. The reduction in the dormant period can be well correlated with the drop in slump flow or increase in dynamic yield stress after pumping.
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3 References
- Choi Myoungsung, Roussel Nicolas, Kim Youngjin, Kim Jinkeun (2013-01)
Lubrication-Layer Properties During Concrete Pumping - Secrieru Egor, Cotardo Dario, Mechtcherine Viktor, Lohaus Ludger et al. (2018-04)
Changes in Concrete Properties During Pumping and Formation of Lubricating Material Under Pressure - Shen Wenkai, Shi Caijun, Khayat Kamal, Yuan Qiang et al. (2021-06)
Change in Fresh Properties of High-Strength Concrete Due to Pumping
2 Citations
- Givkashi Mohammad, Moodi Faramarz, Ramezanianpour Amir (2024-08)
Effect of Pumping Process on the Properties of 3D Printed Concrete Containing Air-Entraining-Agent - Overmeir Anne, Šavija Branko, Bos Freek, Schlangen Erik (2023-09)
Effects of 3D Concrete Printing Phases on the Mechanical Performance of Printable Strain-Hardening Cementitious Composites
BibTeX
@article{shen_yuan_shi_ji.2021.IoPotREoHSCaIRttR,
author = "Wenkai Shen and Qiang Yuan and Caijun Shi and Youhong Ji and Rong Zeng and Wei Li and Zheng Chen",
title = "Influence of Pumping on the Resistivity Evolution of High-Strength Concrete and Its Relation to the Rheology",
doi = "10.1016/j.conbuildmat.2021.124095",
year = "2021",
journal = "Construction and Building Materials",
volume = "302",
}
Formatted Citation
W. Shen, “Influence of Pumping on the Resistivity Evolution of High-Strength Concrete and Its Relation to the Rheology”, Construction and Building Materials, vol. 302, 2021, doi: 10.1016/j.conbuildmat.2021.124095.
Shen, Wenkai, Qiang Yuan, Caijun Shi, Youhong Ji, Rong Zeng, Wei Li, and Zheng Chen. “Influence of Pumping on the Resistivity Evolution of High-Strength Concrete and Its Relation to the Rheology”. Construction and Building Materials 302 (2021). https://doi.org/10.1016/j.conbuildmat.2021.124095.